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Published in: Metabolic Brain Disease 1/2012

01-03-2012 | Original Paper

Exploratory investigation on nitro- and phospho-proteome cerebellum changes in hyperammonemia and hepatic encephalopathy rat models

Authors: Laura Brunelli, Roberta Campagna, Luisa Airoldi, Omar Cauli, Marta Llansola, Jordi Boix, Vicente Felipo, Roberta Pastorelli

Published in: Metabolic Brain Disease | Issue 1/2012

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Abstract

Hepatic encephalopathy (HE) is a neurological disease associated with hepatic dysfunction. Current knowledge suggests that hyperammonemia, related to liver failure, is a main factor contributing to the cerebral alterations in HE and that hyperammonemia might impair signal transduction associated with post-translational modification of proteins such as tyrosine-nitration and phosphorylation. However, the molecular bases of the HE remain unclear and very little is known about the occurrence of post-translational modification on in vivo proteins. In this exploratory study we look for evidence of post-translation modifications of proteins in the cerebellum of experimental HE rat models using a proteomic approach. For the first time we showed that hyperammonemia without liver failure (HA rats) and experimental HE with liver failure due to portacaval shunt (PCS rats) lead to a reduced protein nitration in rat cerebellum, where the undernitrated proteins were involved in energy metabolism and cytoskeleton remodelling. Moreover we showed that tyrosine nitration loss of these proteins was not necessarily associated to a change in their phosphorylation state as result of the disease. Interestingly the rat cerebellum phosphoproteome was mainly perturbed in PCS rats, whereas HA rats did not shown appreciable changes in their phosphoprotein profile. Since the protein nitration level decreased similarly in the cerebellum of both HA and PCS rats, this implies that the two disease models share common effects but also present some differential signalling effects in the cerebellum of the same animals. This study highlights the interest for studying the concerted action of multiple signalling pathways in HE development.
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Literature
go back to reference Ahl B, Weissenborn K, van den Hoff J, Fischer-Wasels D, Kostler H, Hecker H, Burchert W (2004) Regional differences in cerebral blood flow and cerebral ammonia metabolism in patients with cirrhosis. Hepatology 40:73–79PubMedCrossRef Ahl B, Weissenborn K, van den Hoff J, Fischer-Wasels D, Kostler H, Hecker H, Burchert W (2004) Regional differences in cerebral blood flow and cerebral ammonia metabolism in patients with cirrhosis. Hepatology 40:73–79PubMedCrossRef
go back to reference Azorin I, Minana MD, Felipo V, Grisolia S (1989) A simple animal model of hyperammonemia. Hepatology 10:311–314PubMedCrossRef Azorin I, Minana MD, Felipo V, Grisolia S (1989) A simple animal model of hyperammonemia. Hepatology 10:311–314PubMedCrossRef
go back to reference Bradshaw RA, Medzihradszky KF, Chalkley RJ (2010) Protein PTMs: post-translational modifications or pesky trouble makers? J Mass Spectrom 45:1095–1097PubMedCrossRef Bradshaw RA, Medzihradszky KF, Chalkley RJ (2010) Protein PTMs: post-translational modifications or pesky trouble makers? J Mass Spectrom 45:1095–1097PubMedCrossRef
go back to reference Carpi D, Korkalainen M, Airoldi L, Fanelli R, Hakansson H, Muhonen V, Tuukkanen J, Viluksela M, Pastorelli R (2009) Dioxin-sensitive proteins in differentiating osteoblasts: effects on bone formation in vitro. Toxicol Sci 108:330–343PubMedCrossRef Carpi D, Korkalainen M, Airoldi L, Fanelli R, Hakansson H, Muhonen V, Tuukkanen J, Viluksela M, Pastorelli R (2009) Dioxin-sensitive proteins in differentiating osteoblasts: effects on bone formation in vitro. Toxicol Sci 108:330–343PubMedCrossRef
go back to reference Cauli O, Llansola M, Erceg S, Felipo V (2006) Hypolocomotion in rats with chronic liver failure is due to increased glutamate and activation of metabotropic glutamate receptors in substantia nigra. J Hepatol 45:654–661PubMedCrossRef Cauli O, Llansola M, Erceg S, Felipo V (2006) Hypolocomotion in rats with chronic liver failure is due to increased glutamate and activation of metabotropic glutamate receptors in substantia nigra. J Hepatol 45:654–661PubMedCrossRef
go back to reference Cauli O, Rodrigo R, Llansola M, Montoliu C, Monfort P, Piedrafita B, El Mlili N, Boix J, Agusti A, Felipo V (2009) Glutamatergic and gabaergic neurotransmission and neuronal circuits in hepatic encephalopathy. Metab Brain Dis 24:69–80PubMedCrossRef Cauli O, Rodrigo R, Llansola M, Montoliu C, Monfort P, Piedrafita B, El Mlili N, Boix J, Agusti A, Felipo V (2009) Glutamatergic and gabaergic neurotransmission and neuronal circuits in hepatic encephalopathy. Metab Brain Dis 24:69–80PubMedCrossRef
go back to reference Chen BS, Roche KW (2009) Growth factor-dependent trafficking of cerebellar NMDA receptors via protein kinase B/Akt phosphorylation of NR2C. Neuron 62:471–478PubMedCrossRef Chen BS, Roche KW (2009) Growth factor-dependent trafficking of cerebellar NMDA receptors via protein kinase B/Akt phosphorylation of NR2C. Neuron 62:471–478PubMedCrossRef
go back to reference Cingolani LA, Goda Y (2008) Actin in action: the interplay between the actin cytoskeleton and synaptic efficacy. Nat Rev Neurosci 9:344–356PubMedCrossRef Cingolani LA, Goda Y (2008) Actin in action: the interplay between the actin cytoskeleton and synaptic efficacy. Nat Rev Neurosci 9:344–356PubMedCrossRef
go back to reference Cole AR, Causeret F, Yadirgi G, Hastie CJ, McLauchlan H, McManus EJ, Hernandez F, Eickholt BJ, Nikolic M, Sutherland C (2006) Distinct priming kinases contribute to differential regulation of collapsin response mediator proteins by glycogen synthase kinase-3 in vivo. J Biol Chem 281:16591–16598PubMedCrossRef Cole AR, Causeret F, Yadirgi G, Hastie CJ, McLauchlan H, McManus EJ, Hernandez F, Eickholt BJ, Nikolic M, Sutherland C (2006) Distinct priming kinases contribute to differential regulation of collapsin response mediator proteins by glycogen synthase kinase-3 in vivo. J Biol Chem 281:16591–16598PubMedCrossRef
go back to reference Corbalan R, Chatauret N, Behrends S, Butterworth RF, Felipo V (2002) Region selective alterations of soluble guanylate cyclase content and modulation in brain of cirrhotic patients. Hepatology 36:1155–1162PubMedCrossRef Corbalan R, Chatauret N, Behrends S, Butterworth RF, Felipo V (2002) Region selective alterations of soluble guanylate cyclase content and modulation in brain of cirrhotic patients. Hepatology 36:1155–1162PubMedCrossRef
go back to reference Duncan MW (2003) A review of approaches to the analysis of 3-nitrotyrosine. Amino Acids 25:351–361PubMedCrossRef Duncan MW (2003) A review of approaches to the analysis of 3-nitrotyrosine. Amino Acids 25:351–361PubMedCrossRef
go back to reference Earnest S, Khokhlatchev A, Albanesi JP, Barylko B (1996) Phosphorylation of dynamin by ERK2 inhibits the dynamin-microtubule interaction. FEBS Lett 396:62–66PubMedCrossRef Earnest S, Khokhlatchev A, Albanesi JP, Barylko B (1996) Phosphorylation of dynamin by ERK2 inhibits the dynamin-microtubule interaction. FEBS Lett 396:62–66PubMedCrossRef
go back to reference El-Mlili N, Rodrigo R, Naghizadeh B, Cauli O, Felipo V (2008) Chronic hyperammonemia reduces the activity of neuronal nitric oxide synthase in cerebellum by altering its localization and increasing its phosphorylation by calcium-calmodulin kinase II. J Neurochem 106:1440–1449PubMedCrossRef El-Mlili N, Rodrigo R, Naghizadeh B, Cauli O, Felipo V (2008) Chronic hyperammonemia reduces the activity of neuronal nitric oxide synthase in cerebellum by altering its localization and increasing its phosphorylation by calcium-calmodulin kinase II. J Neurochem 106:1440–1449PubMedCrossRef
go back to reference Erceg S, Monfort P, Hernandez-Viadel M, Llansola M, Montoliu C, Felipo V (2005) Restoration of learning ability in hyperammonemic rats by increasing extracellular cGMP in brain. Brain Res 1036:115–121PubMedCrossRef Erceg S, Monfort P, Hernandez-Viadel M, Llansola M, Montoliu C, Felipo V (2005) Restoration of learning ability in hyperammonemic rats by increasing extracellular cGMP in brain. Brain Res 1036:115–121PubMedCrossRef
go back to reference Felipo V, Minana MD, Grisolia S (1988) Long-term ingestion of ammonium increases acetylglutamate and urea levels without affecting the amount of carbamoyl-phosphate synthase. Eur J Biochem 176:567–571PubMedCrossRef Felipo V, Minana MD, Grisolia S (1988) Long-term ingestion of ammonium increases acetylglutamate and urea levels without affecting the amount of carbamoyl-phosphate synthase. Eur J Biochem 176:567–571PubMedCrossRef
go back to reference Felipo V, Grau E, Minana MD, Grisolia S (1993) Hyperammonemia decreases protein-kinase-C-dependent phosphorylation of microtubule-associated protein 2 and increases its binding to tubulin. Eur J Biochem 214:243–249PubMedCrossRef Felipo V, Grau E, Minana MD, Grisolia S (1993) Hyperammonemia decreases protein-kinase-C-dependent phosphorylation of microtubule-associated protein 2 and increases its binding to tubulin. Eur J Biochem 214:243–249PubMedCrossRef
go back to reference Giordano G, Sanchez-Perez AM, Montoliu C, Berezney R, Malyavantham K, Costa LG, Calvete JJ, Felipo V (2005) Activation of NMDA receptors induces protein kinase A-mediated phosphorylation and degradation of matrin 3. Blocking these effects prevents NMDA-induced neuronal death. J Neurochem 94:808–818PubMedCrossRef Giordano G, Sanchez-Perez AM, Montoliu C, Berezney R, Malyavantham K, Costa LG, Calvete JJ, Felipo V (2005) Activation of NMDA receptors induces protein kinase A-mediated phosphorylation and degradation of matrin 3. Blocking these effects prevents NMDA-induced neuronal death. J Neurochem 94:808–818PubMedCrossRef
go back to reference Gorg B, Qvartskhava N, Bidmon HJ, Palomero-Gallagher N, Kircheis G, Zilles K, Haussinger D (2010) Oxidative stress markers in the brain of patients with cirrhosis and hepatic encephalopathy. Hepatology 52:256–265PubMedCrossRef Gorg B, Qvartskhava N, Bidmon HJ, Palomero-Gallagher N, Kircheis G, Zilles K, Haussinger D (2010) Oxidative stress markers in the brain of patients with cirrhosis and hepatic encephalopathy. Hepatology 52:256–265PubMedCrossRef
go back to reference Gururaj A, Barnes CJ, Vadlamudi RK, Kumar R (2004) Regulation of phosphoglucomutase 1 phosphorylation and activity by a signaling kinase. Oncogene 23:8118–8127PubMedCrossRef Gururaj A, Barnes CJ, Vadlamudi RK, Kumar R (2004) Regulation of phosphoglucomutase 1 phosphorylation and activity by a signaling kinase. Oncogene 23:8118–8127PubMedCrossRef
go back to reference Haussinger D, Schliess F (2005) Astrocyte swelling and protein tyrosine nitration in hepatic encephalopathy. Neurochem Int 47:64–70PubMedCrossRef Haussinger D, Schliess F (2005) Astrocyte swelling and protein tyrosine nitration in hepatic encephalopathy. Neurochem Int 47:64–70PubMedCrossRef
go back to reference Haussinger D, Schliess F (2008) Pathogenetic mechanisms of hepatic encephalopathy. Gut 57:1156–1165PubMedCrossRef Haussinger D, Schliess F (2008) Pathogenetic mechanisms of hepatic encephalopathy. Gut 57:1156–1165PubMedCrossRef
go back to reference Haussinger D, Kircheis G, Fischer R, Schliess F, vom Dahl S (2000) Hepatic encephalopathy in chronic liver disease: a clinical manifestation of astrocyte swelling and low-grade cerebral edema? J Hepatol 32:1035–1038PubMedCrossRef Haussinger D, Kircheis G, Fischer R, Schliess F, vom Dahl S (2000) Hepatic encephalopathy in chronic liver disease: a clinical manifestation of astrocyte swelling and low-grade cerebral edema? J Hepatol 32:1035–1038PubMedCrossRef
go back to reference Haussinger D, Gorg B, Reinehr R, Schliess F (2005) Protein tyrosine nitration in hyperammonemia and hepatic encephalopathy. Metab Brain Dis 20:285–294PubMedCrossRef Haussinger D, Gorg B, Reinehr R, Schliess F (2005) Protein tyrosine nitration in hyperammonemia and hepatic encephalopathy. Metab Brain Dis 20:285–294PubMedCrossRef
go back to reference Hawkins RA, Mans AM (1993) Brain metabolism in hepatic encephalopathy and hyperammonemia. Adv Exp Med Biol 341:13–19PubMedCrossRef Hawkins RA, Mans AM (1993) Brain metabolism in hepatic encephalopathy and hyperammonemia. Adv Exp Med Biol 341:13–19PubMedCrossRef
go back to reference Hazell AS, Butterworth RF (1999) Hepatic encephalopathy: an update of pathophysiologic mechanisms. Proc Soc Exp Biol Med 222:99–112PubMedCrossRef Hazell AS, Butterworth RF (1999) Hepatic encephalopathy: an update of pathophysiologic mechanisms. Proc Soc Exp Biol Med 222:99–112PubMedCrossRef
go back to reference Hermenegildo C, Montoliu C, Llansola M, Munoz MD, Gaztelu JM, Minana MD, Felipo V (1998) Chronic hyperammonemia impairs the glutamate-nitric oxide-cyclic GMP pathway in cerebellar neurons in culture and in the rat in vivo. Eur J Neurosci 10:3201–3209PubMedCrossRef Hermenegildo C, Montoliu C, Llansola M, Munoz MD, Gaztelu JM, Minana MD, Felipo V (1998) Chronic hyperammonemia impairs the glutamate-nitric oxide-cyclic GMP pathway in cerebellar neurons in culture and in the rat in vivo. Eur J Neurosci 10:3201–3209PubMedCrossRef
go back to reference Holness MJ, Sugden MC (2003) Regulation of pyruvate dehydrogenase complex activity by reversible phosphorylation. Biochem Soc Trans 31:1143–1151PubMedCrossRef Holness MJ, Sugden MC (2003) Regulation of pyruvate dehydrogenase complex activity by reversible phosphorylation. Biochem Soc Trans 31:1143–1151PubMedCrossRef
go back to reference Hou ST, Jiang SX, Aylsworth A, Ferguson G, Slinn J, Hu H, Leung T, Kappler J, Kaibuchi K (2009) CaMKII phosphorylates collapsin response mediator protein 2 and modulates axonal damage during glutamate excitotoxicity. J Neurochem 111:870–881PubMedCrossRef Hou ST, Jiang SX, Aylsworth A, Ferguson G, Slinn J, Hu H, Leung T, Kappler J, Kaibuchi K (2009) CaMKII phosphorylates collapsin response mediator protein 2 and modulates axonal damage during glutamate excitotoxicity. J Neurochem 111:870–881PubMedCrossRef
go back to reference Kaneko T, Maeda A, Takefuji M, Aoyama H, Nakayama M, Kawabata S, Kawano Y, Iwamatsu A, Amano M, Kaibuchi K (2005) Rho mediates endocytosis of epidermal growth factor receptor through phosphorylation of endophilin A1 by Rho-kinase. Genes Cells 10:973–987PubMedCrossRef Kaneko T, Maeda A, Takefuji M, Aoyama H, Nakayama M, Kawabata S, Kawano Y, Iwamatsu A, Amano M, Kaibuchi K (2005) Rho mediates endocytosis of epidermal growth factor receptor through phosphorylation of endophilin A1 by Rho-kinase. Genes Cells 10:973–987PubMedCrossRef
go back to reference Kim YS, Choi MY, Kim YH, Jeon BT, Lee DH, Roh GS, Kang SS, Kim HJ, Cho GJ, Choi WS (2010) Protein kinase Cdelta is associated with 14-3-3 phosphorylation in seizure-induced neuronal death. Epilepsy Res 92:30–40PubMedCrossRef Kim YS, Choi MY, Kim YH, Jeon BT, Lee DH, Roh GS, Kang SS, Kim HJ, Cho GJ, Choi WS (2010) Protein kinase Cdelta is associated with 14-3-3 phosphorylation in seizure-induced neuronal death. Epilepsy Res 92:30–40PubMedCrossRef
go back to reference Kimura K, Suzuki H, Nakano Y (1988) Regulation of glutamine synthetase activity by phosphorylation instead of by adenylylation. Biochem Biophys Res Commun 155:1133–1138PubMedCrossRef Kimura K, Suzuki H, Nakano Y (1988) Regulation of glutamine synthetase activity by phosphorylation instead of by adenylylation. Biochem Biophys Res Commun 155:1133–1138PubMedCrossRef
go back to reference Kwon YG, Lee SY, Choi Y, Greengard P, Nairn AC (1997) Cell cycle-dependent phosphorylation of mammalian protein phosphatase 1 by cdc2 kinase. Proc Natl Acad Sci U S A 94:2168–2173PubMedCrossRef Kwon YG, Lee SY, Choi Y, Greengard P, Nairn AC (1997) Cell cycle-dependent phosphorylation of mammalian protein phosphatase 1 by cdc2 kinase. Proc Natl Acad Sci U S A 94:2168–2173PubMedCrossRef
go back to reference Lee SH, Fisher B (1961) Portacaval shunt in the rat. Surgery 50:668–672PubMed Lee SH, Fisher B (1961) Portacaval shunt in the rat. Surgery 50:668–672PubMed
go back to reference Liaudet L, Vassalli G, Pacher P (2009) Role of peroxynitrite in the redox regulation of cell signal transduction pathways. Front Biosci 14:4809–4814PubMedCrossRef Liaudet L, Vassalli G, Pacher P (2009) Role of peroxynitrite in the redox regulation of cell signal transduction pathways. Front Biosci 14:4809–4814PubMedCrossRef
go back to reference Llansola M, Erceg S, Felipo V (2005) Chronic exposure to ammonia alters the modulation of phosphorylation of microtubule-associated protein 2 by metabotropic glutamate receptors 1 and 5 in cerebellar neurons in culture. Neuroscience 133:185–191PubMedCrossRef Llansola M, Erceg S, Felipo V (2005) Chronic exposure to ammonia alters the modulation of phosphorylation of microtubule-associated protein 2 by metabotropic glutamate receptors 1 and 5 in cerebellar neurons in culture. Neuroscience 133:185–191PubMedCrossRef
go back to reference Lockwood AH, Yap EW, Rhoades HM, Wong WH (1991) Altered cerebral blood flow and glucose metabolism in patients with liver disease and minimal encephalopathy. J Cereb Blood Flow Metab 11:331–336PubMedCrossRef Lockwood AH, Yap EW, Rhoades HM, Wong WH (1991) Altered cerebral blood flow and glucose metabolism in patients with liver disease and minimal encephalopathy. J Cereb Blood Flow Metab 11:331–336PubMedCrossRef
go back to reference Lopez CJ, Qayyum I, Mishra OP, Delivoria-Papadopoulos M (2005) Effect of nitration on protein tyrosine phosphatase and protein phosphatase activity in neuronal cell membranes of newborn piglets. Neurosci Lett 386:78–81PubMedCrossRef Lopez CJ, Qayyum I, Mishra OP, Delivoria-Papadopoulos M (2005) Effect of nitration on protein tyrosine phosphatase and protein phosphatase activity in neuronal cell membranes of newborn piglets. Neurosci Lett 386:78–81PubMedCrossRef
go back to reference Mallozzi C, Ceccarini M, Camerini S, Macchia G, Crescenzi M, Petrucci TC, Di Stasi AM (2009) Peroxynitrite induces tyrosine residue modifications in synaptophysin C-terminal domain, affecting its interaction with src. J Neurochem 111:859–869PubMedCrossRef Mallozzi C, Ceccarini M, Camerini S, Macchia G, Crescenzi M, Petrucci TC, Di Stasi AM (2009) Peroxynitrite induces tyrosine residue modifications in synaptophysin C-terminal domain, affecting its interaction with src. J Neurochem 111:859–869PubMedCrossRef
go back to reference Minetti M, Mallozzi C, Di Stasi AM (2002) Peroxynitrite activates kinases of the src family and upregulates tyrosine phosphorylation signaling. Free Radic Biol Med 33:744–754PubMedCrossRef Minetti M, Mallozzi C, Di Stasi AM (2002) Peroxynitrite activates kinases of the src family and upregulates tyrosine phosphorylation signaling. Free Radic Biol Med 33:744–754PubMedCrossRef
go back to reference Mizutani A, Kuroda Y, Futatsugi A, Furuichi T, Mikoshiba K (2008) Phosphorylation of Homer3 by calcium/calmodulin-dependent kinase II regulates a coupling state of its target molecules in Purkinje cells. J Neurosci 28:5369–5382PubMedCrossRef Mizutani A, Kuroda Y, Futatsugi A, Furuichi T, Mikoshiba K (2008) Phosphorylation of Homer3 by calcium/calmodulin-dependent kinase II regulates a coupling state of its target molecules in Purkinje cells. J Neurosci 28:5369–5382PubMedCrossRef
go back to reference Monfort P, Kosenko E, Erceg S, Canales JJ, Felipo V (2002) Molecular mechanism of acute ammonia toxicity: role of NMDA receptors. Neurochem Int 41:95–102PubMedCrossRef Monfort P, Kosenko E, Erceg S, Canales JJ, Felipo V (2002) Molecular mechanism of acute ammonia toxicity: role of NMDA receptors. Neurochem Int 41:95–102PubMedCrossRef
go back to reference Monfort P, Erceg S, Piedrafita B, Llansola M, Felipo V (2007) Chronic liver failure in rats impairs glutamatergic synaptic transmission and long-term potentiation in hippocampus and learning ability. Eur J Neurosci 25:2103–2111PubMedCrossRef Monfort P, Erceg S, Piedrafita B, Llansola M, Felipo V (2007) Chronic liver failure in rats impairs glutamatergic synaptic transmission and long-term potentiation in hippocampus and learning ability. Eur J Neurosci 25:2103–2111PubMedCrossRef
go back to reference Monteiro HP (2002) Signal transduction by protein tyrosine nitration: competition or cooperation with tyrosine phosphorylation-dependent signaling events? Free Radic Biol Med 33:765–773PubMedCrossRef Monteiro HP (2002) Signal transduction by protein tyrosine nitration: competition or cooperation with tyrosine phosphorylation-dependent signaling events? Free Radic Biol Med 33:765–773PubMedCrossRef
go back to reference Monteiro HP, Arai RJ, Travassos LR (2008) Protein tyrosine phosphorylation and protein tyrosine nitration in redox signaling. Antioxid Redox Signal 10:843–889PubMedCrossRef Monteiro HP, Arai RJ, Travassos LR (2008) Protein tyrosine phosphorylation and protein tyrosine nitration in redox signaling. Antioxid Redox Signal 10:843–889PubMedCrossRef
go back to reference Morishita W, Connor JH, Xia H, Quinlan EM, Shenolikar S, Malenka RC (2001) Regulation of synaptic strength by protein phosphatase 1. Neuron 32:1133–1148PubMedCrossRef Morishita W, Connor JH, Xia H, Quinlan EM, Shenolikar S, Malenka RC (2001) Regulation of synaptic strength by protein phosphatase 1. Neuron 32:1133–1148PubMedCrossRef
go back to reference Niwa R, Nagata-Ohashi K, Takeichi M, Mizuno K, Uemura T (2002) Control of actin reorganization by Slingshot, a family of phosphatases that dephosphorylate ADF/cofilin. Cell 108:233–246PubMedCrossRef Niwa R, Nagata-Ohashi K, Takeichi M, Mizuno K, Uemura T (2002) Control of actin reorganization by Slingshot, a family of phosphatases that dephosphorylate ADF/cofilin. Cell 108:233–246PubMedCrossRef
go back to reference Pastorelli R, Carpi D, Campagna R, Airoldi L, Pohjanvirta R, Viluksela M, Hakansson H, Boutros PC, Moffat ID, Okey AB, Fanelli R (2006) Differential expression profiling of the hepatic proteome in a rat model of dioxin resistance: correlation with genomic and transcriptomic analyses. Mol Cell Proteomics 5:882–894PubMedCrossRef Pastorelli R, Carpi D, Campagna R, Airoldi L, Pohjanvirta R, Viluksela M, Hakansson H, Boutros PC, Moffat ID, Okey AB, Fanelli R (2006) Differential expression profiling of the hepatic proteome in a rat model of dioxin resistance: correlation with genomic and transcriptomic analyses. Mol Cell Proteomics 5:882–894PubMedCrossRef
go back to reference Ponticos M, Lu QL, Morgan JE, Hardie DG, Partridge TA, Carling D (1998) Dual regulation of the AMP-activated protein kinase provides a novel mechanism for the control of creatine kinase in skeletal muscle. EMBO J 17:1688–1699PubMedCrossRef Ponticos M, Lu QL, Morgan JE, Hardie DG, Partridge TA, Carling D (1998) Dual regulation of the AMP-activated protein kinase provides a novel mechanism for the control of creatine kinase in skeletal muscle. EMBO J 17:1688–1699PubMedCrossRef
go back to reference Quest AF, Soldati T, Hemmer W, Perriard JC, Eppenberger HM, Wallimann T (1990) Phosphorylation of chicken brain-type creatine kinase affects a physiologically important kinetic parameter and gives rise to protein microheterogeneity in vivo. FEBS Lett 269:457–464PubMedCrossRef Quest AF, Soldati T, Hemmer W, Perriard JC, Eppenberger HM, Wallimann T (1990) Phosphorylation of chicken brain-type creatine kinase affects a physiologically important kinetic parameter and gives rise to protein microheterogeneity in vivo. FEBS Lett 269:457–464PubMedCrossRef
go back to reference Rao KV, Norenberg MD (2001) Cerebral energy metabolism in hepatic encephalopathy and hyperammonemia. Metab Brain Dis 16:67–78PubMedCrossRef Rao KV, Norenberg MD (2001) Cerebral energy metabolism in hepatic encephalopathy and hyperammonemia. Metab Brain Dis 16:67–78PubMedCrossRef
go back to reference Rodrigo R, Erceg S, Rodriguez-Diaz J, Saez-Valero J, Piedrafita B, Suarez I, Felipo V (2007) Glutamate-induced activation of nitric oxide synthase is impaired in cerebral cortex in vivo in rats with chronic liver failure. J Neurochem 102:51–64PubMedCrossRef Rodrigo R, Erceg S, Rodriguez-Diaz J, Saez-Valero J, Piedrafita B, Suarez I, Felipo V (2007) Glutamate-induced activation of nitric oxide synthase is impaired in cerebral cortex in vivo in rats with chronic liver failure. J Neurochem 102:51–64PubMedCrossRef
go back to reference Sanchez-Perez AM, Felipo V (2006) Chronic exposure to ammonia alters basal and NMDA-induced phosphorylation of NMDA receptor-subunit NR1. Neuroscience 140:1239–1244PubMedCrossRef Sanchez-Perez AM, Felipo V (2006) Chronic exposure to ammonia alters basal and NMDA-induced phosphorylation of NMDA receptor-subunit NR1. Neuroscience 140:1239–1244PubMedCrossRef
go back to reference Schiarea S, Solinas G, Allavena P, Scigliuolo GM, Bagnati R, Fanelli R, Chiabrando C (2010) Secretome analysis of multiple pancreatic cancer cell lines reveals perturbations of key functional networks. J Proteome Res 9:4376–4392PubMedCrossRef Schiarea S, Solinas G, Allavena P, Scigliuolo GM, Bagnati R, Fanelli R, Chiabrando C (2010) Secretome analysis of multiple pancreatic cancer cell lines reveals perturbations of key functional networks. J Proteome Res 9:4376–4392PubMedCrossRef
go back to reference Schliess F, Gorg B, Fischer R, Desjardins P, Bidmon HJ, Herrmann A, Butterworth RF, Zilles K, Haussinger D (2002) Ammonia induces MK-801-sensitive nitration and phosphorylation of protein tyrosine residues in rat astrocytes. FASEB J 16:739–741PubMed Schliess F, Gorg B, Fischer R, Desjardins P, Bidmon HJ, Herrmann A, Butterworth RF, Zilles K, Haussinger D (2002) Ammonia induces MK-801-sensitive nitration and phosphorylation of protein tyrosine residues in rat astrocytes. FASEB J 16:739–741PubMed
go back to reference Suarez I, Bodega G, Arilla E, Felipo V, Fernandez B (2006) The expression of nNOS, iNOS and nitrotyrosine is increased in the rat cerebral cortex in experimental hepatic encephalopathy. Neuropathol Appl Neurobiol 32:594–604PubMedCrossRef Suarez I, Bodega G, Arilla E, Felipo V, Fernandez B (2006) The expression of nNOS, iNOS and nitrotyrosine is increased in the rat cerebral cortex in experimental hepatic encephalopathy. Neuropathol Appl Neurobiol 32:594–604PubMedCrossRef
go back to reference Vinatier J, Herzog E, Plamont MA, Wojcik SM, Schmidt A, Brose N, Daviet L, El Mestikawy S, Giros B (2006) Interaction between the vesicular glutamate transporter type 1 and endophilin A1, a protein essential for endocytosis. J Neurochem 97:1111–1125PubMedCrossRef Vinatier J, Herzog E, Plamont MA, Wojcik SM, Schmidt A, Brose N, Daviet L, El Mestikawy S, Giros B (2006) Interaction between the vesicular glutamate transporter type 1 and endophilin A1, a protein essential for endocytosis. J Neurochem 97:1111–1125PubMedCrossRef
go back to reference Voglmaier SM, Kam K, Yang H, Fortin DL, Hua Z, Nicoll RA, Edwards RH (2006) Distinct endocytic pathways control the rate and extent of synaptic vesicle protein recycling. Neuron 51:71–84PubMedCrossRef Voglmaier SM, Kam K, Yang H, Fortin DL, Hua Z, Nicoll RA, Edwards RH (2006) Distinct endocytic pathways control the rate and extent of synaptic vesicle protein recycling. Neuron 51:71–84PubMedCrossRef
go back to reference Yoo Y, Ho HJ, Wang C, Guan JL (2010) Tyrosine phosphorylation of cofilin at Y68 by v-Src leads to its degradation through ubiquitin-proteasome pathway. Oncogene 29:263–272PubMedCrossRef Yoo Y, Ho HJ, Wang C, Guan JL (2010) Tyrosine phosphorylation of cofilin at Y68 by v-Src leads to its degradation through ubiquitin-proteasome pathway. Oncogene 29:263–272PubMedCrossRef
go back to reference Zhao W, Cavallaro S, Gusev P, Alkon DL (2000) Nonreceptor tyrosine protein kinase pp 60c-src in spatial learning: synapse-specific changes in its gene expression, tyrosine phosphorylation, and protein-protein interactions. Proc Natl Acad Sci U S A 97:8098–8103PubMedCrossRef Zhao W, Cavallaro S, Gusev P, Alkon DL (2000) Nonreceptor tyrosine protein kinase pp 60c-src in spatial learning: synapse-specific changes in its gene expression, tyrosine phosphorylation, and protein-protein interactions. Proc Natl Acad Sci U S A 97:8098–8103PubMedCrossRef
Metadata
Title
Exploratory investigation on nitro- and phospho-proteome cerebellum changes in hyperammonemia and hepatic encephalopathy rat models
Authors
Laura Brunelli
Roberta Campagna
Luisa Airoldi
Omar Cauli
Marta Llansola
Jordi Boix
Vicente Felipo
Roberta Pastorelli
Publication date
01-03-2012
Publisher
Springer US
Published in
Metabolic Brain Disease / Issue 1/2012
Print ISSN: 0885-7490
Electronic ISSN: 1573-7365
DOI
https://doi.org/10.1007/s11011-011-9268-4

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